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Water salinity effects on growth and nitrogen assimilation rate of mangrove (Kandelia candel) seedlings

机译:水盐度对红树林(Kandelia Candel)幼苗生长和氮素同化率的影响

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Mangrove is one of the dominant plants in tropical and sub-tropical estuarine ecosystems. The understanding of growth and nitrogen (N) assimilation rates of mangrove at different water salinities can be beneficial for evaluating the response of mangroves to increased anthropogenic N loading into these systems. We investigated the effect of salinity on growth and N assimilation of Kandelia candel (L) Druce under the phytotron conditions at alternating temperatures of 25 degrees C (day) and 20 degrees C (night) with 16-h light at similar to 300 mu mol photons m(-2)s(-1). The experiment included four salinity treatments (0, 8.8,17.5 and 35 psu) and two N sources (NO3- and NH4*). With increasing salinity, mangrove shoot and root biomass decreased, but its hypocotyl biomass increased. Thus, the total biomass yield of mangrove remained unchanged in different salinity treatments. Nevertheless, N assimilation rate measured by the N-15 stable isotope technique was significantly reduced from about 2.2 mgN(-1) biomass hr(-1) under control conditions (0 psu) to 0.9 mgNg(-1) biomass hr(-1) under 35 psu. Mangrove favored nitrate than ammonium at low salinity (0 psu), but preferred NH4* to NO3- at higher salinity (17.5 and 35 psu). (C) 2016 Elsevier B.V. All rights reserved.
机译:红树林是热带和亚热带河口生态系统中的主要植物之一。对不同水盐水中的红树林的生长和氮气(N)同化率的理解可能有益于评估红树林对这些系统增加人为N加载的响应。我们调查了盐度对Kandelia Candel(L)在25摄氏度(日)和20℃(夜晚)的交替温度下的植物蛋白酶条件下的生长和N同化的影响,并且在类似于300μmol的16-H光光子M(-2)S(-1)。该实验包括四种盐度处理(0,8.8,17.5和35psu)和两个n来源(NO 3和NH4 *)。随着盐度的增加,红树林芽和根生物量降低,但其缺口生物质增加。因此,在不同的盐度处理中,红树林的总生物质产量保持不变。然而,通过N-15稳定同位素技术测量的N同化速率从控制条件(0 PSU)的约2.2mgN(-1)生物量HR(-1)显着降低至0.9mgng(-1)生物量HR(-1 )35 psu下面。红树林在低盐度(0 PSU)下的氨基酸盐青硝酸盐,但优选的NH 4 *至NO 3-在较高的盐度(17.5和35psu)。 (c)2016年Elsevier B.v.保留所有权利。

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